sp hybridization
The carbon atom in CF4 has a hybridization of sp3.
The hybridization state of each carbon atom in nemotin is sp3.
The carbon atom in CH3CN is sp hybridized.
The carbon atom in HCN is sp hybridized.
The carbon in CH3CHCH2 has sp3 hybridization. Each carbon atom forms four sigma bonds, leading to the tetrahedral geometry characteristic of sp3 hybridization.
The carbon atom in CF4 has a hybridization of sp3.
The hybridization state of each carbon atom in nemotin is sp3.
One carbon atom and 2 oxygen atoms per molecule.
The carbon atom in CH3CN is sp hybridized.
The carbon atom in HCN is sp hybridized.
The carbon in CH3CHCH2 has sp3 hybridization. Each carbon atom forms four sigma bonds, leading to the tetrahedral geometry characteristic of sp3 hybridization.
The molecular geometry of carbon tetrabromide is tetrahedral. The sp3 hybridization of the carbon atom forms four equivalent sp3 hybrid orbitals arranged in a tetrahedral geometry around the central carbon atom.
The carbon atom in a carboxylic acid molecule is sp2 hybridized.
The carbon atom in hydrogen cyanide (HCN) is sp hybridized.
Carbon dioxide isn't an atom, it's a molecule.
The hybridization of HCCl3 is sp3. Each carbon atom in the molecule is bonded to three chlorine atoms and one hydrogen atom, resulting in a tetrahedral geometry around each carbon atom, which corresponds to an sp3 hybridization.
The electronic geometry about the carbon atom is: tetrahedral The orbital hybridization about the carbon atom is: sp^3 The molecular geometry about the carbon atom is: tetrahedral